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Early Natural Stimulation through Environmental Enrichment Accelerates Neuronal Development in the Mouse Dentate Gyrus

机译:通过环境富集的早期自然刺激加速了小鼠齿状回的神经元发育。

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摘要

The dentate gyrus is the primary afferent into the hippocampal formation, with important functions in learning and memory. Granule cells, the principle neuronal type in the dentate gyrus, are mostly formed postnatally, in a process that continues into adulthood. External stimuli, including environmental enrichment, voluntary exercise and learning, have been shown to significantly accelerate the generation and maturation of dentate granule cells in adult rodents. Whether, and to what extent, such environmental stimuli regulate the development and maturation of dentate granule cells during early postnatal development is largely unknown. Furthermore, whether natural stimuli affect the synaptic properties of granule cells had been investigated neither in newborn neurons of the adult nor during early development. To examine the effect of natural sensory stimulation on the dentate gyrus, we reared newborn mice in an enriched environment (EE). Using immunohistochemistry, we showed that dentate granule cells from EE-reared mice exhibited earlier morphological maturation, manifested as faster peaking of doublecortin expression and elevated expression of mature neuronal markers (including NeuN, calbindin and MAP2) at the end of the second postnatal week. Also at the end of the second postnatal week, we found increased density of dendritic spines across the entire dentate gyrus, together with elevated levels of postsynaptic scaffold (post-synaptic density 95) and receptor proteins (GluR2 and GABAARγ2) of excitatory and inhibitory synapses. Furthermore, dentate granule cells of P14 EE-reared mice had lower input resistances and increased glutamatergic and GABAergic synaptic inputs. Together, our results demonstrate that EE-rearing promotes morphological and electrophysiological maturation of dentate granule cells, underscoring the importance of natural environmental stimulation on development of the dentate gyrus.
机译:齿状回是海马结构的主要传入基因,在学习和记忆中起重要作用。颗粒细胞是齿状回的主要神经元类型,大多在出生后形成,并持续到成年。外部刺激,包括环境富集,自愿运动和学习,已被证明可以显着加速成年啮齿动物齿状颗粒细胞的生成和成熟。在出生后早期发育期间,这种环境刺激是否以及在何种程度上调节齿状颗粒细胞的发育和成熟尚不清楚。此外,既未在成人的新生神经元中也不在早期发育期间研究了自然刺激是否影响颗粒细胞的突触特性。为了检查自然的感觉刺激对齿状回的影响,我们在丰富的环境(EE)中饲养了新生小鼠。使用免疫组织化学,我们显示来自EE饲养小鼠的齿状颗粒细胞表现出更早的形态成熟,表现为在出生后第二周结束时,双皮质素表达更快达到峰值,成熟神经元标志物(包括NeuN,calbindin和MAP2)的表达升高。同样在产后第二周结束时,我们发现整个齿状回中的树突棘密度增加,同时突触后支架(突触后密度为95)以及兴奋性和抑制性突触的受体蛋白(GluR2和GABAARγ2)水平升高。 。此外,P14 EE饲养的小鼠的齿状颗粒细胞具有较低的输入阻力,并增加了谷氨酸能和GABA能突触输入。在一起,我们的结果表明,EE养育促进齿状颗粒细胞的形态和电生理成熟,强调自然环境刺激对齿状回发育的重要性。

著录项

  • 作者

    Liu, Na; He, Shan; Yu, Xiang;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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